Biology Department, Boston College, 140 Commonwealth Ave., Chestnut Hill, MA 02467, USA.
Cell Signal. 2011 Mar;23(3):594-601. doi: 10.1016/j.cellsig.2010.11.013. Epub 2010 Nov 29.
The Schizosaccharomyces pombe fbp1 gene is transcriptionally repressed by protein kinase A (PKA) that is activated by extracellular glucose via a cAMP-signaling pathway. We previously used an fbp1-ura4 reporter that places uracil biosynthesis under the control of the glucose-sensing pathway to identify mutations in genes of the cAMP pathway. More recently, this reporter has been used in high throughput screens for small molecule inhibitors of heterologously-expressed cyclic nucleotide phosphodiesterases (PDEs) that hydrolyse cAMP to 5' AMP. Here we show that strains lacking the adenylyl cyclase gene respond to either exogenous cAMP or cGMP to activate PKA, thus regulating fbp1-ura4 expression and other PKA-regulated processes such as conjugation and the nuclear export of an Rst2-GFP fusion protein. Expression of cGMP-specific PDEs or ones that hydrolyse both cAMP and cGMP increases the amount of exogenous cGMP required to activate PKA in order to repress fbp1-ura4 expression, creating conditions that allow detection of inhibitors of these PDEs. As proof of this concept, we screened a collection of compounds previously identified as inhibitors of cAMP-specific PDE4 or PDE7 enzymes for their ability to inhibit the mammalian cGMP-specific PDE5A enzyme. We identified compound BC76, which inhibits PDE5A in an in vitro enzyme assay with an IC(50) of 232nM. Further yeast-based assays show that BC76 inhibits PDE1, PDE4, PDE5, PDE8, PDE10 and PDE11, thus demonstrating the utility of this system for detecting and characterising inhibitors of either cAMP- or cGMP-metabolising PDEs.
裂殖酵母 fbp1 基因的转录受到蛋白激酶 A(PKA)的抑制,而 PKA 则通过 cAMP 信号通路被细胞外葡萄糖激活。我们之前使用了一个 fbp1-ura4 报告基因,该基因将尿嘧啶生物合成置于葡萄糖感应途径的控制之下,以鉴定 cAMP 途径中基因的突变。最近,该报告基因已被用于高通量筛选异源表达的环核苷酸磷酸二酯酶(PDEs)的小分子抑制剂,这些抑制剂可将 cAMP 水解为 5' AMP。在这里,我们发现缺乏腺苷酸环化酶基因的菌株对外源 cAMP 或 cGMP 有反应,从而激活 PKA,从而调节 fbp1-ura4 表达和其他 PKA 调节的过程,如接合和 Rst2-GFP 融合蛋白的核输出。cGMP 特异性 PDEs 或同时水解 cAMP 和 cGMP 的 PDEs 的表达增加了激活 PKA 以抑制 fbp1-ura4 表达所需的外源 cGMP 的量,从而创造了可以检测这些 PDEs 的抑制剂的条件。作为这一概念的证明,我们筛选了以前鉴定为 cAMP 特异性 PDE4 或 PDE7 酶抑制剂的化合物库,以检测它们抑制哺乳动物 cGMP 特异性 PDE5A 酶的能力。我们鉴定出了化合物 BC76,它在体外酶测定中以 232nM 的 IC50 抑制 PDE5A。进一步的酵母基础测定表明,BC76 抑制 PDE1、PDE4、PDE5、PDE8、PDE10 和 PDE11,从而证明了该系统用于检测和表征 cAMP 或 cGMP 代谢 PDEs 的抑制剂的实用性。